Fakultät für Chemie, Lehrstuhl für Organische Chemie II, Technische Universität München, Lichtenbergstraße 4, 85748 Garching (Germany).
Chembiochem. 2013 Dec 16;14(18):2447-55. doi: 10.1002/cbic.201300551. Epub 2013 Oct 25.
Copper-catalysed alkyne-azide 1,3-dipolar cycloaddition (CuAAC) is the predominantly used bioconjugation method in the field of activity-based protein profiling (ABPP). Several limitations, however, including conversion efficiency, protein denaturation and buffer compatibility, restrict the scope of established procedures. We introduce an ABPP customised click methodology based on refined CuAAC conditions together with new accelerating copper ligands. A screen of several triazole compounds revealed the cationic quaternary {3-[4-({bis[(1-tert-butyl-1H-1,2,3-triazol-4-yl)methyl]amino}methyl)-1H-1,2,3-triazol-1-yl]propyl}trimethylammonium trifluoroacetate (TABTA) to be a superior ligand. TABTA exhibited excellent in vitro conjugation kinetics and optimal ABPP labelling activity while almost exclusively preserving the native protein fold. The application of this CuAAC-promoting system is amenable to existing protocols with minimal perturbations and is even compatible with previously unusable buffer systems such as Tris⋅HCl.
铜催化的炔烃-叠氮化物 1,3-偶极环加成(CuAAC)是活性蛋白质谱分析(ABPP)领域中主要使用的生物缀合方法。然而,包括转化率、蛋白质变性和缓冲液兼容性在内的几个限制因素限制了既定程序的范围。我们引入了一种基于改良的 CuAAC 条件和新型加速铜配体的 ABPP 定制点击方法。几种三唑化合物的筛选揭示了阳离子季铵盐{3-[4-({双[(1-叔丁基-1H-1,2,3-三唑-4-基)甲基]氨基}甲基)-1H-1,2,3-三唑-1-基]丙基}三甲基铵三氟乙酸盐(TABTA)是一种优越的配体。TABTA 表现出优异的体外缀合动力学和最佳的 ABPP 标记活性,同时几乎完全保留了天然蛋白质构象。该 CuAAC 促进系统的应用适用于现有协议,几乎没有干扰,甚至与以前无法使用的缓冲液系统(如 Tris·HCl)兼容。